Araştırma Makalesi

Resveratrol Reorganizes the Impaired Cellular Functions of ARPE-19 Cells Created in Diabetes Model

Cilt: 10 Sayı: 1 17 Mart 2025
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Resveratrol Reorganizes the Impaired Cellular Functions of ARPE-19 Cells Created in Diabetes Model

Öz

Objective: It is well known that high blood glucose levels can damage many visual functions. So, the study aimed to investigate the effects of resveratrol on cellular lipid peroxidation (MDA), cytokines, VEGF-A and apoptosis levels in vitro diabetes model-induced ARPE-19 cells. Materials and Methods: Six experimental groups were conceptualized as follows. 1-Control group: Received no treatment (Standard Growth Medium), 2-Mannitol Group (M): Cells incubated in 19.5 mM Mannitol supplemented medium, 3-High Glucose Group (HG): Cells incubated in high glucose (25 mM Glucose), 4-Resveratrol Group (R): Cells incubated with 100 µM resveratrol Standard Growth Medium, 5-Mannitol + Resveratrol Group (M+R), 6-High Glucose + Resveratrol Group (HG+R). In All groups, cells were incubated for 48 hrs, and MDA, IL-1β, TNF-α, VEGF-A and Apoptosis levels were measured. Results: High glucose medium increased the MDA, IL-1β, TNF-α and VEGF-A levels while resveratrol caused a significant decrement in MDA, IL-1β, TNF-α and VEGF-A levels in diabetes model-induced ARPE-19 cells. As a result, resveratrol prevented the ARPE-19 cells against diabetes related impaired conditions. Conclusions: In conclusion, resveratrol can reverse disrupted cellular functions by reducing cellular oxidative stress and supporting cellular viability.

Anahtar Kelimeler

Etik Beyan

The authors state no conflict of interest.

Teşekkür

The authors thanks to technician Muhammet Şahin for his helps.

Kaynakça

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  7. 7. Argun M, Tök L, Uğuz AC, Çelik Ö, Tök ÖY, Naziroğlu M. Melatonin and amfenac modulate calcium entry, apoptosis, and oxidative stress in ARPE-19 cell culture exposed to blue light irradiation (405 nm). Eye (Lond). 2014;28(6):752-760. doi:10.1038/eye.2014.50
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Ayrıntılar

Birincil Dil

İngilizce

Konular

Görme Bilimi

Bölüm

Araştırma Makalesi

Erken Görünüm Tarihi

10 Mart 2025

Yayımlanma Tarihi

17 Mart 2025

Gönderilme Tarihi

30 Ekim 2024

Kabul Tarihi

29 Aralık 2024

Yayımlandığı Sayı

Yıl 2025 Cilt: 10 Sayı: 1

Kaynak Göster

APA
Argun, M., & Çelik, Ö. (2025). Resveratrol Reorganizes the Impaired Cellular Functions of ARPE-19 Cells Created in Diabetes Model. Online Turkish Journal of Health Sciences, 10(1), 38-44. https://doi.org/10.26453/otjhs.1576093
AMA
1.Argun M, Çelik Ö. Resveratrol Reorganizes the Impaired Cellular Functions of ARPE-19 Cells Created in Diabetes Model. OTSBD. 2025;10(1):38-44. doi:10.26453/otjhs.1576093
Chicago
Argun, Mehmet, ve Ömer Çelik. 2025. “Resveratrol Reorganizes the Impaired Cellular Functions of ARPE-19 Cells Created in Diabetes Model”. Online Turkish Journal of Health Sciences 10 (1): 38-44. https://doi.org/10.26453/otjhs.1576093.
EndNote
Argun M, Çelik Ö (01 Mart 2025) Resveratrol Reorganizes the Impaired Cellular Functions of ARPE-19 Cells Created in Diabetes Model. Online Turkish Journal of Health Sciences 10 1 38–44.
IEEE
[1]M. Argun ve Ö. Çelik, “Resveratrol Reorganizes the Impaired Cellular Functions of ARPE-19 Cells Created in Diabetes Model”, OTSBD, c. 10, sy 1, ss. 38–44, Mar. 2025, doi: 10.26453/otjhs.1576093.
ISNAD
Argun, Mehmet - Çelik, Ömer. “Resveratrol Reorganizes the Impaired Cellular Functions of ARPE-19 Cells Created in Diabetes Model”. Online Turkish Journal of Health Sciences 10/1 (01 Mart 2025): 38-44. https://doi.org/10.26453/otjhs.1576093.
JAMA
1.Argun M, Çelik Ö. Resveratrol Reorganizes the Impaired Cellular Functions of ARPE-19 Cells Created in Diabetes Model. OTSBD. 2025;10:38–44.
MLA
Argun, Mehmet, ve Ömer Çelik. “Resveratrol Reorganizes the Impaired Cellular Functions of ARPE-19 Cells Created in Diabetes Model”. Online Turkish Journal of Health Sciences, c. 10, sy 1, Mart 2025, ss. 38-44, doi:10.26453/otjhs.1576093.
Vancouver
1.Mehmet Argun, Ömer Çelik. Resveratrol Reorganizes the Impaired Cellular Functions of ARPE-19 Cells Created in Diabetes Model. OTSBD. 01 Mart 2025;10(1):38-44. doi:10.26453/otjhs.1576093

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